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Detection of Demagnetization Faults in Surface-Mounted Permanent Magnet Synchronous Motors by Means of the Zero-Sequence Voltage Component

机译:借助零序电压分量检测表面贴装式永磁同步电动机中的退磁故障

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摘要

This paper develops and analyzes an online methodology to detect demagnetization faults in surface-mounted permanent magnet synchronous motors. The proposed methodology, which takes into account the effect of the inverter that feeds the machine, is based on monitoring the zero-sequence voltage component of the stator phase voltages. The theoretical basis of the proposed method has been established. Attributes of the method presented here include simplicity, very low computational burden, and high sensibility. Since the proposed method requires access to the neutral point of the stator windings, it is especially useful when dealing with fault tolerant systems. A simple expression of the zero-sequence voltage component is deduced, which is proposed as a fault indicator parameter. Both simulation and experimental results presented in this paper show the potential of the proposed method to provide helpful and reliable data to carry out an online diagnosis of demagnetization failures in the rotor permanent magnets.
机译:本文开发并分析了一种在线方法,用于检测表面安装永磁同步电动机中的退磁故障。所提出的方法考虑了给电机供电的逆变器的影响,该方法基于监视定子相电压的零序电压分量。该方法的理论基础已经建立。这里介绍的方法的属性包括简单性,非常低的计算负担和高敏感性。由于所提出的方法需要接近定子绕组的中性点,因此在处理容错系统时特别有用。推导了零序电压分量的简单表达式,建议将其作为故障指标参数。本文中给出的仿真结果和实验结果均表明,该方法具有潜力,可提供有用且可靠的数据,以在线诊断转子永磁体中的退磁故障。

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